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手性超分子组装体:可控构建与生物活性。

Chiral Supramolecular Assemblies: Controllable Construction and Biological Activity.

机构信息

State Key Lab of Metal Matrix Composites, School of Materials Science and Engineering, Shanghai Jiao Tong University, 800 Dongchuan Road, Shanghai, 200240, P. R. China.

出版信息

Chempluschem. 2023 Jul;88(7):e202300226. doi: 10.1002/cplu.202300226.

Abstract

Chiral supramolecular assemblies with helical structures (e. g., proteins with α-helix, DNA with double helix, collagen with triple-helix) as the central structure motifs in biological systems play a crucial role in various physiological activities of living organisms. Variations in chiral structure can cause many abnormal physiological activities. To gain insight into the construction, structural transition, and related physiological functions of these complex helix in natural systems, it is necessary to fabricate artificial supramolecular assemblies with controllable helix orientation as research platform. This review discusses recent advances in chiral supramolecular assembly, including the precise construction and regulation of assembled chiral nanostructures with tunable chirality. Chiral structure-dependent biological activities, including cell proliferation, cell differentiation, antibacterial activity and tissue regeneration, are also discussed. This review not only contributes to further understanding of the importance of chirality in the physiological environment, but also plays an important role in the development of chiral biomedical materials for the treatment of diseases (e. g., tissue engineering regeneration, stem cell transplantation therapy).

摘要

手性超分子组装体具有螺旋结构(例如,具有α-螺旋的蛋白质、具有双螺旋的 DNA、具有三螺旋的胶原蛋白),作为生物体系中的中心结构基序,在手性结构的各种生理活性中起着关键作用。手性结构的变化会导致许多异常的生理活动。为了深入了解这些复杂螺旋在天然体系中的构建、结构转变和相关生理功能,有必要制备具有可控螺旋取向的人工超分子组装体作为研究平台。本文综述了手性超分子组装的最新进展,包括具有可调手性的组装手性纳米结构的精确构建和调控。还讨论了手性结构依赖性的生物活性,包括细胞增殖、细胞分化、抗菌活性和组织再生。本综述不仅有助于进一步理解手性在生理环境中的重要性,而且在手性生物医学材料的发展中也起着重要作用,可用于治疗疾病(例如,组织工程再生、干细胞移植治疗)。

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